<?xml version="1.1" encoding="utf-8"?>
<article xsi:noNamespaceSchemaLocation="http://jats.nlm.nih.gov/publishing/1.1/xsd/JATS-journalpublishing1-mathml3.xsd" dtd-version="1.1" xmlns:xlink="http://www.w3.org/1999/xlink" xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance"><front><journal-meta><journal-id journal-id-type="publisher-id">CDCST</journal-id><journal-title-group><journal-title>China Daily Chemical Science Technology</journal-title></journal-title-group><issn>2997-7096</issn><eissn>2997-710X</eissn><publisher><publisher-name>Art and Design</publisher-name></publisher></journal-meta><article-meta><article-id pub-id-type="doi">10.61369/CDCST.2026010005</article-id><article-categories><subj-group subj-group-type="heading"><subject>Article</subject></subj-group></article-categories><title>甲基椰油酰基牛磺酸钠体系复配辅助表活对温和性和调理性的影响研究</title><url>https://artdesignp.com/journal/CDCST/3/1/10.61369/CDCST.2026010005</url><author>林凤英,刘思欣,朱雅婷,陈永录,亓丰伟,杨洁</author><pub-date pub-type="publication-year"><year>2026</year></pub-date><volume>3</volume><issue>1</issue><history><date date-type="pub"><published-time>2026-03-05</published-time></date></history><abstract>以甲基椰油酰基牛磺酸钠为主表面活性剂，复配不同的表面活性剂，通过絮凝曲线、Zeta电位、玉米醇溶蛋白溶解度、皮肤表面活性剂残留、RBC溶血和鸡胚绒毛尿囊膜等测试研究复配的表面活性剂对香波整体的温和性和调理性的影响。测试结果显示：相对于原体系，复配非离子表面活性剂癸基葡糖苷（Plantacare 2000 UP，APG）能有效降低产品刺激性，增强香波的调理效果，复配的氨基酸表面活性剂中月桂酰肌氨酸钠表现较为突出，而复配硫酸盐和磺酸盐体系会增强产品的刺激性，同时对调理起到负向的调节作用。通过Pearson相关性分析，玉米醇溶蛋白溶解性与絮凝透光率存在强相关性，相关系数r=0.866（P＜ 0.01）； 皮肤表面活性剂残留量与Zeta 电位也存在强相关性，相关系数r=0.790（P＜ 0.05）。</abstract><keywords>透明香波,甲基椰油酰基牛磺酸钠,表面活性剂,温和性,调理性</keywords></article-meta></front><body/><back><ref-list><ref id="B1" content-type="article"><label>1</label><element-citation publication-type="journal"><p>[1]陈梅,李真真,许明力. 椰油酰甲基牛磺酸牛磺酸钠的性能研究[J]. 中国洗涤用品工业, 2023 (11): 12-25.[2]董银卯,斯晓帆,彭金乱. 用玉米醇溶蛋白测试表面活性剂的刺激性[J]. 日用化学工业, 2002 (5): 59-61.[3]揭邃. 调理香波的絮凝性研究[J]. 中国洗涤用品工业, 2007 (1):73-76.[4]王鹏,李东华,张利萍.阳离子瓜尔胶和阴离子表面活性剂相互作用的研究[J]. 中国洗涤用品工业,2015(8):51-54.[5]MASAHIRO TAKEHARA.Properties and applications of amino acid based surfactants[J].Colloids and Surfaces,1989,38(1):149-167.[6]JOHNSON E S, CHANG D W, SCHWARTZ J R, et al.Enhanced piroctone olamine retention from shampoo for superior anti-dandruf eficacy[J]. International Journal of Cosmetic Science, 2023,45(2): 236-245.[7]MORRIS SAV,THOMPSON RT,GLENN RW, et al.Mechanisms of &amp;nbsp;anionic surfactant penetration into human skin:Investigating monomer, micelle and submicellar aggregate penetration theories[J].International Journal of Cosmetic Science,2019, 41(1),55&amp;ndash;66.[8]欧泽亮, 王坦, 贾泽宝, 等. 用玉米醇溶蛋白测试法研究洗发香波的刺激性[J]. 日用化学品科学, 2013, 36(12): 33-35,42.[9]邓正巧,刘聪颖. 玉米醇溶蛋白法在洗发水刺激性研究中的应用[J]. 日用化学品科学, 2021, 44 (12): 14-17.[10]刘晓晨,汤小芹,张国栋.表面活性剂胶束体系的粒径大小及温和性研究[J]. 日用化学品科学, 2024, 47 (12): 68-71.[11] KARSA D R. Chemistry and technology of surfactants[M].John wiley &amp;amp; Sons, 2008.[12]秦尧,闫加雷,钱景茹, 等.表面活性剂在人体皮肤的残留研究[J]. 日用化学品科学,2023,46(6):59-63+70.[13]BROMBERG L, LIU X, WANG I, et al. Control of human skin wettability using the pH of anionic surfactant solution treatments[J].Colloids &amp;amp; Surfaces Bio Interfaces, 2017, 157: 366-372.[14]EMMANUELLE L, STEOHANIE B, YVES C, et al. Surfactants have multifold effects on skin barrier function[J]. European Journal of Dermatology, 2015, 25: 424-435.[15]HOPPEL M, KWIZDA K, BAURECHT D, et al. The effect of a damaged skin barrier on percutaneous absorption of SDS and skin hydration investigated by confocal Raman spectroscopy[J]. Experimental Dermatology, 2016, 25(5): 390-392.[16]HOPPEL M, HOLPER E, BAURECHT D, et al. Monitoring the distribution of surfactants in the stratum corneum by combined ATRFTIR and tape-stripping experiments[J]. Skin Pharmacology and Physiology, 2015, 28(3): 167-175.[17] Limeng Liu.Penetration of Surfactants into Skin[J]. Journal Of Cosmetic Science,2020,71(2):91-109.</p><pub-id pub-id-type="doi"/></element-citation></ref></ref-list></back></article>
